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Implications of King dark matter distribution on oscillatory dynamics around Schwarzschild black holes

Jianling ChengDepartment of Engineering, SIAS University, Xinzheng 451100, P. R. ChinaAbdelmalek BouzenadaLaboratory of Theoretical and Applied Physics, Echahid Cheikh Larbi Tebessi University, Tebessa 12001, AlgeriaAsifa AshrafResearch Center of Astrophysics and Cosmology, Khazar University, 41 Mehseti Street, Baku AZ1096, AzerbaijanFarruh AtamurotovNational University of Uzbekistan, Tashkent 100174, UzbekistanVokhid KhamidovInternational Islamic Academy of Uzbekistan, Abdulla Qodiriy 11, Tashkent 100002, UzbekistanGulzoda RakhimovaInstitute of Fundamental and Applied Research, National Research University, TIIAME, Kori Niyoziy 39, Tashkent 100000, UzbekistanImran ShakirDepartment of Physics, Faculty of Science, Islamic University of Madinah, Madinah 42351, Saudi Arabia
2026en
ABI

Annotatsiya

This study examines the motion of test particles in the spacetime of a non-rotating black hole (BH) model srounded by King dark matter halos. In addition, the geometry is described by a modified static and spherically symmetric metric, where the lapse function depends on the mass of the source, the radius of the scale [Formula: see text], and the central density [Formula: see text] of the system. In this case, the motion of the particles is studied using the effective potential method, which helps to find the conditions for stable and unstable circular orbits, as well as the location of the innermost stable circular orbits (ISCOs). Also, the effective force is obtained to show how dark matter effects change the usual gravitational attraction near the BH. In addition, small changes around circular orbits are analyzed to explain harmonic oscillations and the related epicyclic frequencies. In this case, the frequencies measured by both local and distant observers are discussed, and the periastron precession rate is calculated to show how it differs from the result of GR. In this context, these results show that the King dark matter halos changes the orbital stability, oscillation behavior, and precession motion, showing possible observable effects of King dark matter halos gravitational fields.

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